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首页> 外文期刊>Molecular and Cellular Endocrinology >High expression of liver histone deacetylase 3 contributes to high-fat-diet-induced metabolic syndrome by suppressing the PPAR-gamma and LXR-alpha-pathways in E3 rats.
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High expression of liver histone deacetylase 3 contributes to high-fat-diet-induced metabolic syndrome by suppressing the PPAR-gamma and LXR-alpha-pathways in E3 rats.

机译:肝脏组蛋白脱乙酰基酶3的高表达通过抑制E3大鼠中的PPAR-γ和LXR-α-途径,促进了高脂饮食诱导的代谢综合征。

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摘要

In the previous experiment, we found that there was a different response between E3 rats and DA.1U rats to high-fat-diet-induced metabolic syndrome (HFD-MetS). The aim of this study was to explore the cause and molecular mechanism of the genetic difference in susceptibility to metabolic syndrome in E3 rats as compared with DA.1U rats. Firstly, a 12-week HFD-MetS model in E3 and DA.1U rats was carried out and assessed. Then, the expression of key insulin signaling molecules, metabolic nuclear receptors, metabolic key enzymes and histone deacetylases (Hdacs) was determined by different methods. Finally, the effects of overexpression and disruption of Hdac3 on metabolic nuclear receptors were analyzed in CBRH-7919 cells and primarily-hepatic cells from DA.1U and E3 rats. We found that E3 rats were susceptible, while DA.1U rats were resisted to HFD-MetS. The expression of liver X receptor alpha,beta (LXR-alpha,beta), farnesoid X receptor (FXR), peroxisome proliferator activated receptor gamma (PPAR-gamma) and cholesterol 7alpha-hydroxylase (CYP7A1) increased markedly in DA.1U rat liver, whereas they decreased significantly in E3 rats. The expression of Hdac3 increased by HFD treatment in both E3 and DA.1U rat livers, but the constitutive Hdac3 expression was lower in DA.IU rat liver than in E3 rat liver. Importantly, overexpression of Hdac3 could downregulate the expression of LXR-alpha, PPAR-gamma and CYP7A1 in both CBRH-7919 cells and primarily cultured hepatic cells from DA.IU rats. On the contrary, disruption of Hdac3 by shRNA upregulated the expression of LXR-alpha, PPAR-gamma and CYP7A1 in both CBRH-7919 cells and primarily cultured hepatic cells from E3 rats. The results suggested that a high constitutive expression of Hdac3 inhibiting the expression of PPAR-gamma, LXR-alpha and CYP7A1 in liver contributes to HFD-MetS in E3 rats.
机译:在先前的实验中,我们发现E3大鼠和DA.1U大鼠对高脂饮食诱导的代谢综合征(HFD-MetS)的反应不同。本研究的目的是探讨与DA.1U大鼠相比,E3大鼠对代谢综合征易感性遗传差异的原因和分子机制。首先,建立并评估了E3和DA.1U大鼠的12周HFD-MetS模型。然后,通过不同方法确定关键胰岛素信号分子,代谢核受体,代谢关键酶和组蛋白脱乙酰基酶(Hdacs)的表达。最后,在来自DA.1U和E3大鼠的CBRH-7919细胞和原代肝细胞中分析了Hdac3过表达和破坏对代谢核受体的影响。我们发现E3大鼠易感,而DA.1U大鼠对HFD-MetS具有抗性。 DA.1U大鼠肝中肝脏X受体α,β(LXR-alpha,β),法呢素X受体(FXR),过氧化物酶体增殖物激活受体γ(PPAR-γ)和胆固醇7α-羟化酶(CYP7A1)的表达明显增加,而在E3大鼠中它们显着降低。通过HFD处理,E3和DA.1U大鼠肝脏中Hdac3的表达均增加,但DA.IU大鼠肝脏中本构性Hdac3表达低于E3大鼠肝脏。重要的是,Hdac3的过表达可能下调CBRH-7919细胞和DA.IU大鼠原代肝细胞中LXR-α,PPAR-γ和CYP7A1的表达。相反,shRNA对Hdac3的破坏上调了CBRH-7919细胞和E3大鼠原代培养的肝细胞中LXR-α,PPAR-γ和CYP7A1的表达。结果表明,Hdac3的高组成型表达抑制肝脏中PPAR-γ,LXR-alpha和CYP7A1的表达有助于E3大鼠的HFD-MetS。

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